首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >SnO-nanocluster modified anatase TiO2 photocatalyst: exploiting the Sn(n) lone pair for a new photocatalyst material with visible light absorption and charge carrier separation
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SnO-nanocluster modified anatase TiO2 photocatalyst: exploiting the Sn(n) lone pair for a new photocatalyst material with visible light absorption and charge carrier separation

机译:SnO-纳米簇修饰的锐钛矿型TiO2光催化剂:利用Sn(n)孤对制备具有可见光吸收和载流子分离的新型光催化剂材料

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Modifying TiO2 to design new photocatalysts with visible light absorption and reduced charge carrier recombination for photocatalytic depollution or water splitting is a very active field. A promising approach is to deposit small nanoclusters of a metal oxide on a semiconducting oxide such as TiO2 or ZnGa2O4. In this paper we present a first principles density functional theory (DFT) investigation of a novel concept in photocatalyst materials design: Sn(n)0 nanoclusters supported on TiO2 anatase (001) and demonstrate that the presence of the Sn(II)-O lone pair in the nanoclusters gives a new approach to engineering key properties for photocatalysis. The modification of anatase with Sn(n)0 reduces the band gap over unmodified anatase, thus activating the material to visible light. This arises from the upwards shift of the valence band, due to the presence of the Sn 5s-0 2p lone pair in the nanocluster. Enhanced charge separation, which is key for photocatalytic efficiency, arises from the separation of electrons and holes onto the anatase surface and the Sn(II)0 nanocluster. This work realises a new strategy of exploiting the lone pair in elements such as Sn to raise the VB edge of modified TiO2 and enhance charge separation in new photocatalyst materials.
机译:改性TiO2来设计具有可见光吸收和减少电荷载流子重组以用于光催化脱污染或水分解的新型光催化剂是一个非常活跃的领域。一种有前途的方法是在诸如TiO2或ZnGa2O4的半导体氧化物上沉积金属纳米簇。在本文中,我们提出了光催化材料设计中一个新概念的第一原理密度泛函理论(DFT)研究:负载在TiO2锐钛矿(001)上的Sn(n)0纳米团簇,并证明了Sn(II)-O的存在纳米簇中的孤对提供了一种新的方法来设计光催化的关键特性。与未修饰的锐钛矿相比,用Sn(n)0修饰锐钛矿可减少带隙,从而使材料活化为可见光。这是由于在纳米簇中存在Sn 5s-0 2p孤对导致价带的向上移动。电子和空穴在锐钛矿表面和Sn(II)0纳米簇上的分离产生了增强的电荷分离,这是光催化效率的关键。这项工作实现了一种新的策略,即利用锡等元素中的孤对来提高改性TiO2的VB边缘并增强新型光催化剂材料中的电荷分离。

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